AbstractErythrocytes can reduce extracellular ascorbate free radicals by a plasma membrane redox system using intracellular ascorbate as an electron donor. In order to test whether the redox system has electrogenic properties, we studied the effect of ascorbate free radical reduction on the membrane potential of the cells using the fluorescent dye 3,3′-dipropylthiadicarbocyanine iodide. It was found that the erythrocyte membrane depolarized when ascorbate free radicals were reduced. Also, the activity of the redox system proved to be susceptible to changes in the membrane potential. Hyperpolarized cells could reduce ascorbate free radical at a higher rate than depolarized cells. These results show that the ascorbate-driven reduction of extr...
We have investigated the enzymatic reduction and accumulation of vitamin C in HaCaT epithelial cells...
Redox balance is important for platelet physiology, indeed it is crucial for blood coagulation and t...
AbstractEndothelial cells encounter oxidant stress due to their location in the vascular wall, and b...
AbstractErythrocytes can reduce extracellular ascorbate free radicals by a plasma membrane redox sys...
AbstractAscorbic acid is an important antioxidant in human blood. Erythrocytes contribute to the ant...
AbstractReduction of extracellular ferricyanide by intact cells reflects the activity of an as yet u...
Ascorbate is a major water-soluble antioxidant found in body fluids of mammals, where it acts as a s...
electron transport in pulmonary arterial endothelial cells. Am. J. Physiol. 274 (Lung Cell. Mol. Phy...
The identity of the naturally occurring compounds that accept electrons from plasma membrane-bound r...
AbstractElectron flow across the plasma membrane of living cells and its rapid modulation by growth ...
AbstractThe possible involvement of a high-potential b-type cytochrome in plasma membrane electron t...
Ascorbate is an important element of a variety of cellular processes including the control of reacti...
none4siElectron-accepting properties and, in particular, resonance dissociative electron attachment ...
Sugar beet (Beta vulgaris L.) leaf plasma membrane vesicles were loaded with an NADH-generating syst...
Erythrocytes are involved in the transport of oxygen and carbon dioxide in the body. Since pH is the...
We have investigated the enzymatic reduction and accumulation of vitamin C in HaCaT epithelial cells...
Redox balance is important for platelet physiology, indeed it is crucial for blood coagulation and t...
AbstractEndothelial cells encounter oxidant stress due to their location in the vascular wall, and b...
AbstractErythrocytes can reduce extracellular ascorbate free radicals by a plasma membrane redox sys...
AbstractAscorbic acid is an important antioxidant in human blood. Erythrocytes contribute to the ant...
AbstractReduction of extracellular ferricyanide by intact cells reflects the activity of an as yet u...
Ascorbate is a major water-soluble antioxidant found in body fluids of mammals, where it acts as a s...
electron transport in pulmonary arterial endothelial cells. Am. J. Physiol. 274 (Lung Cell. Mol. Phy...
The identity of the naturally occurring compounds that accept electrons from plasma membrane-bound r...
AbstractElectron flow across the plasma membrane of living cells and its rapid modulation by growth ...
AbstractThe possible involvement of a high-potential b-type cytochrome in plasma membrane electron t...
Ascorbate is an important element of a variety of cellular processes including the control of reacti...
none4siElectron-accepting properties and, in particular, resonance dissociative electron attachment ...
Sugar beet (Beta vulgaris L.) leaf plasma membrane vesicles were loaded with an NADH-generating syst...
Erythrocytes are involved in the transport of oxygen and carbon dioxide in the body. Since pH is the...
We have investigated the enzymatic reduction and accumulation of vitamin C in HaCaT epithelial cells...
Redox balance is important for platelet physiology, indeed it is crucial for blood coagulation and t...
AbstractEndothelial cells encounter oxidant stress due to their location in the vascular wall, and b...